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一氧化氮、一氧化碳和硫化氢在调节下丘脑-垂体-肾上腺轴中的作用。

Roles of nitric oxide, carbon monoxide, and hydrogen sulfide in the regulation of the hypothalamic-pituitary-adrenal axis.

机构信息

Institute of Pharmacology, Catholic University School of Medicine, Rome, Italy.

出版信息

J Neurochem. 2010 May;113(3):563-75. doi: 10.1111/j.1471-4159.2010.06606.x. Epub 2010 Jan 20.

Abstract

The importance of stress in modifying human behavior and lifestyle is no longer a matter of debate. Although mild stress enhances the immune response and prevents infections, prolonged stress seems to play pathogenic roles in depression and neurodegenerative disorders. The body has developed an adaptive stress response consisting of cardiovascular, metabolic, and psychological changes, which act in concert to eliminate stressors. One of the major components of this response is the hypothalamic-pituitary-adrenal axis, also known as the stress axis. Over the last 30 years, many studies have documented the integrated stress-axis regulation by neurotransmitters. They have also demonstrated that gaseous neuromodulators, such as NO, CO, and H(2)S, regulate the hypothalamic release of neuropeptides. The specific effects (stimulatory vs. inhibitory) of these gases on the stress axis varies, depending on the type of stress (neurogenic or immuno-inflammatory), its intensity (low or high), and the species studied (rodents or humans). This review examines the complex roles of NO, CO, and H(2)S in modulation of stress-axis activity, with particular emphasis on the regulatory effects they exert at the hypothalamic level.

摘要

压力在改变人类行为和生活方式方面的重要性已不再是一个争议的问题。虽然轻度压力增强了免疫反应,防止了感染,但长期的压力似乎在抑郁症和神经退行性疾病中发挥着致病作用。身体已经发展出一种适应压力的反应,包括心血管、代谢和心理变化,这些变化协同作用以消除压力源。这种反应的一个主要组成部分是下丘脑-垂体-肾上腺轴,也称为应激轴。在过去的 30 年里,许多研究已经记录了神经递质对综合应激轴的调节作用。它们还表明,气态神经调质,如 NO、CO 和 H2S,调节下丘脑神经肽的释放。这些气体对应激轴的具体影响(刺激或抑制)因应激类型(神经源性或免疫炎症性)、强度(低或高)和研究的物种(啮齿动物或人类)而异。这篇综述检查了 NO、CO 和 H2S 在调节应激轴活性方面的复杂作用,特别强调了它们在下丘脑水平上发挥的调节作用。

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